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nm23-H1基因转染对人胆管癌细胞系QBC939体外浸润能力的影响
引用本文:李大江,王曙光,陈长宏,张开泰,谢玲. nm23-H1基因转染对人胆管癌细胞系QBC939体外浸润能力的影响[J]. 第三军医大学学报, 2002, 24(10): 1196-1198
作者姓名:李大江  王曙光  陈长宏  张开泰  谢玲
作者单位:1. 第三军医大学附属西南医院全军肝胆外科研究所、西南肝胆外科医院,重庆,400038
2. 军事医学科学院二所,北京,100850
基金项目:全军“九五”医药卫生科研基金 ( 96Q0 6 7),重庆市科委应用基础研究项目资助 ( 1997)
摘    要:目的:探讨nm23-H1基因转染对人胆管癌细胞系QBC939体外浸润能力的影响。方法:将含有全长nm23-H1 cDNA的真核表达载体通过脂腩体法转染人胆管癌细胞系。结果:转染成功的QBC939细胞,其nm23-Hl基因的mRNA、蛋白表达明显增加,转染nm23-H1基因的胆管癌细胞体外浸润能力下降,穿越matrigel的细胞数明显低于亲本QBC939细胞,代表浸润能力的IV型胶原酶(MMP-9)分泌量下降。结论:nm23-Hl基因可以抑制胆管癌细胞的体外浸润能力。

关 键 词:胆管癌 nm23-H1基因 肿瘤浸润 基因转染 Ⅳ型胶原酶
文章编号:1000-5404(2002)10-1196-03
修稿时间:2001-11-21

Effects of nm23-H1 gene transfection on in vitro invasion potential of human cholangiocarcinoma cell line QBC939
LI Da jiang,WANG Shu guang,CHEN Chang hong,ZHANG Kai tai,XIE Ling. Effects of nm23-H1 gene transfection on in vitro invasion potential of human cholangiocarcinoma cell line QBC939[J]. Acta Academiae Medicinae Militaris Tertiae, 2002, 24(10): 1196-1198
Authors:LI Da jiang  WANG Shu guang  CHEN Chang hong  ZHANG Kai tai  XIE Ling
Abstract:Objective To explore the role of nm23 H1 gene overexpression in invasion potential of human cholangiocarcinoma cell line for its potential application in gene therapy for cancer. Methods A mammalian expression vector containing nm23 H1 cDNA was transfected into human cholangiocarcinoma cell line QBC 939 . Northern blotting and immunohistochemistry were used to analyze the expression levels of nm23 H1 and MMP 9, and in vitro invasion potentials the tumor cells before and after the gene transfection. Results After transfection, the nm23 H1 mRNA and protein expression was up regulated significantly. The ability of in vitro invasion through matrigel was remarkably decreased. Immunohistochemical staining showed the expression of MMP 9 were decreased after transfection. Conclusion Up regulation of nm23 H1 in cholangiocarcinoma cell line suppresses its ability of in vitro invasion and reduces the expression of MMP 9 in it.
Keywords:cholangiocarcinoma  nm23 H1 gene  neoplasm invasion  transfection
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